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1Structural Diversity and Biological Activities of Fungal Cyclic Peptides, Excluding Cyclodipeptides
Xiaohan Wang,Minyi Lin,Dan Xu,Daowan Lai,Ligang Zhou
Molecules.2017;22(12)2069
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2Structural Diversity and Biological Activities of Fungal Cyclic Peptides, Excluding Cyclodipeptides
Mishra Rashmi,J. S. Kushveer,V. Venkateswara Sarma
Molecules.2018;22(12)1
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3Antibacterial and Antifungal Compounds from Marine Fungi
Lijian Xu,Wei Meng,Cong Cao,Jian Wang,Wenjun Shan,Qinggui Wang
Marine Drugs.2015;13(6)3479
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4Droplet probe: coupling chromatography to the in situ evaluation of the chemistry of nature
Nicholas H. Oberlies,Sonja L. Knowles,Chiraz Soumia M. Amrine,Diana Kao,Vilmos Kertesz,Huzefa A. Raja
Natural Product Reports.2019;36(7)944
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5The Structural Diversity of Marine Microbial Secondary Metabolites Based on Co-Culture Strategy: 2009–2019
Jianwei Chen,Panqiao Zhang,Xinyi Ye,Bin Wei,Mahmoud Emam,Huawei Zhang,Hong Wang
Marine Drugs.2020;18(9)449
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6Expanding the chemical diversity through microorganisms co-culture: Current status and outlook
Divya Arora,Prasoon Gupta,Sundeep Jaglan,Catherine Roullier,Olivier Grovel,Samuel Bertrand
Biotechnology Advances.2020;40(9)107521
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7A New Nonadride Derivative from the Co-Culture Broth of Two Mangrove Fungi
Weijia Ding,Yingchi Lu,Zihao Feng,Shuhua Luo,Chunyuan Li
Chemistry of Natural Compounds.2017;53(4)691
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8Four New Isocoumarins and a New Natural Tryptamine with Antifungal Activities from a Mangrove Endophytic Fungus Botryosphaeria ramosa L29
Zhihui Wu,Jiaqing Chen,Xiaolin Zhang,Zelin Chen,Tong Li,Zhigang She,Weijia Ding,Chunyuan Li
Marine Drugs.2019;17(2)88
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9Identification and Antifungal Activity of Metabolites from the Mangrove Fungus Phoma sp. L28
Song Huang,Jiaxin Xu,Fenqi Li,Danli Zhou,Li Xu,Chunyuan Li
Chemistry of Natural Compounds.2017;53(2)237
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10Mapping the Fungal Battlefield: Using in situ Chemistry and Deletion Mutants to Monitor Interspecific Chemical Interactions Between Fungi
Sonja L. Knowles,Huzefa A. Raja,Allison J. Wright,Ann Marie L. Lee,Lindsay K. Caesar,Nadja B. Cech,Matthew E. Mead,Jacob L. Steenwyk,Laure N. A. Ries,Gustavo H. Goldman,Antonis Rokas,Nicholas H. Oberlies
Frontiers in Microbiology.2019;10(2)237
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11Mapping the Fungal Battlefield: Using in situ Chemistry and Deletion Mutants to Monitor Interspecific Chemical Interactions Between Fungi
Vanessa Rédou,Marine Vallet,Laurence Meslet-Cladière,Abhishek Kumar,Ka-Lai Pang,Yves-François Pouchus,Georges Barbier,Olivier Grovel,Samuel Bertrand,Soizic Prado,Catherine Roullier,Gaëtan Burgaud
Frontiers in Microbiology.2016;10(2)99
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12Mapping the Fungal Battlefield: Using in situ Chemistry and Deletion Mutants to Monitor Interspecific Chemical Interactions Between Fungi
Fayrouz El Maddah,Gabriele M. König,Katja M. Fisch
Frontiers in Microbiology.2020;10(2)2261
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13The Berkeleylactones, Antibiotic Macrolides from Fungal Coculture
Andrea A. Stierle,Donald B. Stierle,Daniel Decato,Nigel D. Priestley,Jeremy B. Alverson,John Hoody,Kelly McGrath,Dorota Klepacki
Journal of Natural Products.2017;80(4)1150
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14Marine natural products
John W. Blunt,Brent R. Copp,Robert A. Keyzers,Murray H. G. Munro,Michèle R. Prinsep
Natural Product Reports.2016;33(3)382
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15Non-lipopeptide fungi-derived peptide antibiotics developed since 2000
Pengchao Zhao,Yun Xue,Jinghua Li,Xin Li,Xiangyang Zu,Zhanqin Zhao,Chunshan Quan,Weina Gao,Shuxiao Feng
Biotechnology Letters.2019;41(6-7)651
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16Discovery of a New Natural Product and a Deactivation of a Quorum Sensing System by Culturing a “Producer” Bacterium With a Heat-Killed “Inducer” Culture
Libang Liang,Amanda Sproule,Brad Haltli,Douglas H. Marchbank,Fabrice Berrué,David P. Overy,Kate McQuillan,Martin Lanteigne,Noelle Duncan,Hebelin Correa,Russell G. Kerr
Frontiers in Microbiology.2019;9(6-7)651
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17Antimicrobial compounds from marine fungi
Cong Wang,Siyan Tang,Shugeng Cao
Phytochemistry Reviews.2020;9(6-7)651
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18Antimicrobial compounds from marine fungi
Heidrun Anke,Hartmut Laatsch
Phytochemistry Reviews.2018;9(6-7)331
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19Potential Pharmacological Resources: Natural Bioactive Compounds from Marine-Derived Fungi
Liming Jin,Chunshan Quan,Xiyan Hou,Shengdi Fan
Marine Drugs.2016;14(4)76
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20Anti-proliferative potential of cyclotetrapeptides from Bacillus velezensis RA5401 and their molecular docking on G-Protein-Coupled Receptors
Najeeb Ur Rehman,Raeid M.M. Abed,Hidayat Hussain,Husain Yar Khan,Ajmal Khan,Abdul L. Khan,Majid Ali,Abdullah Al-Nasri,Khalid Al-Harrasi,Ahmed N. Al-Rawahi,Abdul Wadood,Ahmed Al-Rawahi,Ahmed Al-Harrasi
Microbial Pathogenesis.2018;123(4)419
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21Anti-proliferative potential of cyclotetrapeptides from Bacillus velezensis RA5401 and their molecular docking on G-Protein-Coupled Receptors
Mishra Rashmi,J. S. Kushveer,V. Venkateswara Sarma
Microbial Pathogenesis.2019;123(4)491
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22Wheldone: Characterization of a Unique Scaffold from the Coculture of Aspergillus fischeri and Xylaria flabelliformis
Sonja L. Knowles,Huzefa A. Raja,Israa H. Isawi,Laura Flores-Bocanegra,Patricia H. Reggio,Cedric J. Pearce,Joanna E. Burdette,Antonis Rokas,Nicholas H. Oberlies
Organic Letters.2020;22(5)1878
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23Anti-infectives from mangrove endophytic fungi
Sunil K. Deshmukh,Shivankar Agrawal,Ved Prakash,Manish K. Gupta,M. Sudhakara Reddy
South African Journal of Botany.2020;22(5)1878
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24Metabolomic Comparison and Assessment of Co-cultivation and a Heat-Killed Inducer Strategy in Activation of Cryptic Biosynthetic Pathways
Libang Liang,Guanqiao Wang,Bradley Haltli,Douglas H. Marchbank,Henrik Stryhn,Hebelin Correa,Russell G. Kerr
Journal of Natural Products.2020;83(9)2696
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25Induction of Diverse Bioactive Secondary Metabolites from the Mangrove Endophytic Fungus Trichoderma sp. (Strain 307) by Co-Cultivation with Acinetobacter johnsonii (Strain B2)
Liuhong Zhang,Shah Niaz,Dilfaraz Khan,Zhen Wang,Yonghong Zhu,Haiyun Zhou,Yongcheng Lin,Jing Li,Lan Liu
Marine Drugs.2017;15(2)35
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